Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, New Territories, Hong Kong.
Phys Chem Chem Phys. 2018 Aug 22;20(33):21280-21285. doi: 10.1039/c8cp02075b.
The hydrogen abstraction reactions of phenyl formate (PF) by different radicals (H/O(3P)/OH/HO2) were theoretically investigated. We calculated the reaction energetics for PF + H/O/OH using the composite method ROCBS-QB3//M06-2X/cc-pVTZ and that for PF + HO2 at the M06-2X/cc-pVTZ level of theory. The high-pressure limit rate constants were calculated using the transition state theory in conjunction with the 1-D hindered rotor approximation and tunneling correction. Three-parameter Arrhenius expressions of rate constants were provided over the temperature range of 500-2000 K. To validate the theoretical calculations, the overall rate constants of PF + OH → Products were measured in shock tube experiments at 968-1128 K and 1.16-1.25 atm using OH laser absorption. The predicted overall rate constants agree well with the shock tube data (within 15%) over the entire experimental conditions. Rate constant analysis indicates that the H-abstraction at the formic acid site dominates the PF consumption, whereas the contribution of H-abstractions at the aromatic ring increases with temperature. Additionally, comparisons of site-specific H-abstractions from PF with methyl formate, ethyl formate, benzene, and toluene were performed to understand the effects of the aromatic ring and side-chain substituent on H-abstraction rate constants.
理论研究了不同自由基(H/O(3P)/OH/HO2)对甲酸苯酯(PF)的氢提取反应。我们使用复合方法 ROCBS-QB3//M06-2X/cc-pVTZ 计算了 PF + H/O/OH 的反应能,并用 M06-2X/cc-pVTZ 理论水平计算了 PF + HO2 的反应能。在过渡态理论的基础上,结合一维受阻转子近似和隧道校正,计算了高压极限速率常数。提供了在 500-2000 K 温度范围内的速率常数的三参数 Arrhenius 表达式。为了验证理论计算,在 968-1128 K 和 1.16-1.25 atm 的条件下,使用 OH 激光吸收,在激波管实验中测量了 PF + OH → 产物的总速率常数。在整个实验条件下,预测的总速率常数与激波管数据(在 15%以内)吻合良好。速率常数分析表明,甲酸部位的 H 提取主导了 PF 的消耗,而芳香环的 H 提取贡献随着温度的升高而增加。此外,还对甲酸苯酯、甲酸甲酯、甲酸乙酯、苯和甲苯的特定部位 H 提取进行了比较,以了解芳香环和侧链取代基对 H 提取速率常数的影响。